Hautzinger Matthew P, Dai Jun, Ji Yujin, Fu Yongping, Chen Jie, Guzei Ilia A, Wright John C, Li Youyong, Jin Song
Department of Chemistry, University of Wisconsin-Madison , 1101 University Avenue, Madison, Wisconsin 53706, United States.
Department of Physics, College of Science, Jiangsu University of Science and Technology , Zhenjiang 212003, People's Republic of China.
Inorg Chem. 2017 Dec 18;56(24):14991-14998. doi: 10.1021/acs.inorgchem.7b02285. Epub 2017 Nov 29.
We report novel two-dimensional lead halide perovskite structures templated by a unique conjugated aromatic dication, N,N-dimethylphenylene-p-diammonium (DPDA). The asymmetrically substituted primary and tertiary ammoniums in DPDA facilitate the formation of two-dimensional network (2DN) perovskite structures incorporating a conjugated dication between the PbX (X = Br, I) layers. These 2DN structures of (DPDA)PbI and (DPDA)PbBr were characterized by single-crystal X-ray diffraction, showing uniquely low distortions in the Pb-X-Pb bond angle for 2D perovskites. The Pb-I-Pb bond angle is very close to ideal (180°) for a 2DN lead iodide perovskite, which can be attributed to the ability of the rigid diammonium DPDA to insert into the PbX octahedral pockets. Optical characterization of (DPDA)PbI shows an excitonic absorption peak at 2.29 eV (541 nm), which is red-shifted in comparison to similar 2DN lead iodide structures. Temperature-dependent photoluminescence of both compounds reveals both a self-trapped exciton and free exciton emission feature. The reduced exciton absorption energy and emission properties are attributed to the dication-induced structural order of the inorganic PbX layers. DFT calculation results suggest mixing of the conjugated organic orbital component in the valence band of these 2DN perovskites. These results demonstrate a rational new strategy to incorporate conjugated organic dications into hybrid perovskites and will spur spectroscopic investigations of these compounds as well as optoelectronic applications.
我们报道了由独特的共轭芳香双阳离子N,N-二甲基亚苯基-对二铵(DPDA)模板化的新型二维卤化铅钙钛矿结构。DPDA中不对称取代的伯铵和叔铵有助于形成二维网络(2DN)钙钛矿结构,在PbX(X = Br,I)层之间包含一个共轭双阳离子。(DPDA)PbI和(DPDA)PbBr的这些2DN结构通过单晶X射线衍射进行了表征,显示出二维钙钛矿在Pb-X-Pb键角方面具有独特的低畸变。对于二维碘化铅钙钛矿,Pb-I-Pb键角非常接近理想值(180°),这可归因于刚性二铵DPDA插入PbX八面体口袋的能力。(DPDA)PbI的光学表征显示在2.29 eV(541 nm)处有一个激子吸收峰,与类似的二维碘化铅结构相比发生了红移。两种化合物的温度依赖光致发光都揭示了自陷激子和自由激子发射特征。激子吸收能量和发射特性的降低归因于双阳离子诱导的无机PbX层的结构有序性。密度泛函理论计算结果表明这些二维钙钛矿价带中存在共轭有机轨道成分的混合。这些结果证明了一种将共轭有机双阳离子纳入杂化钙钛矿的合理新策略,并将推动对这些化合物的光谱研究以及光电子应用。